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首页> 外文期刊>Angewandte Chemie >Ester-Mediated Amide Bond Formation Driven by Wet-Dry Cycles: A Possible Path to Polypeptides on the Prebiotic Earth
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Ester-Mediated Amide Bond Formation Driven by Wet-Dry Cycles: A Possible Path to Polypeptides on the Prebiotic Earth

机译:干湿循环驱动的酯介导的酰胺键形成:益生元地球上多肽的一条可能途径

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摘要

Although it is generally accepted that amino acids were present on the prebiotic Earth, the mechanism by which alpha-amino acids were condensed into polypeptides before the emergence of enzymes remains unsolved. Here, we demonstrate a prebiotically plausible mechanism for peptide (amide) bond formation that is enabled by alpha-hydroxy acids, which were likely present along with amino acids on the early Earth. Together, alpha-hydroxy acids and alpha-amino acids form depsipeptides-oligomers with a combination of ester and amide linkages-in model prebiotic reactions that are driven by wet-cool/dry-hot cycles. Through a combination of ester-amide bond exchange and ester bond hydrolysis, depsipeptides are enriched with amino acids over time. These results support a long-standing hypothesis that peptides might have arisen from ester-based precursors.
机译:尽管普遍认为氨基酸存在于益生元地球上,但在酶出现之前将α-氨基酸浓缩成多肽的机制仍未解决。在这里,我们证明了由α-羟基酸促成的肽(酰胺)键形成的益生元合理机制,而α-羟基酸可能与地球早期的氨基酸一起存在。在由湿冷/干热循环驱动的模型益生元反应中,α-羟基酸和α-氨基酸共同形成具有肽和酰胺键组合的十肽-寡聚体。通过酯-酰胺键交换和酯键水解的组合,随着时间的推移,十肽中富含氨基酸。这些结果支持长期以来的假设,即肽可能源自酯基前体。

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